Synthesis, characterization, photocatalytic and conductivity studies of defect pyrochlore KM0.33Te1.67O6 (M=Al, Cr and Fe)
暂无分享,去创建一个
[1] M. Vithal,et al. Solar water-splitting with the defect pyrochlore type of oxides KFe0.33W1.67O6 and Sn0.5Fe0.33W1.67O6·xH2O , 2014 .
[2] G. Prasad,et al. Preparation, optical, and photocatalytic studies of defect pyrochlores: KCr0.33W1.67O6 and AxCr0.33W1.67O6·nH2O , 2013, Journal of Nanoparticle Research.
[3] M. Vithal,et al. Synthesis, Characterization and Photocatalytic Activity of KAl0.33W1.67O6 and Sn0.5Al0.33W1.67O6xH2O , 2013, Photochemistry and photobiology.
[4] M. Lerch,et al. On the mechanism of proton conductivity in H3OSbTeO6 , 2012 .
[5] M. Ma̧czka,et al. Temperature-dependent Raman scattering study of the defect pyrochlores RbNbWO6 and CsTaWO6 , 2012, Journal of physics. Condensed matter : an Institute of Physics journal.
[6] A. Sleight,et al. Structural studies and electrical properties of Cs/Al/Te/O phases with the pyrochlore structure. , 2011, Inorganic chemistry.
[7] M. Ma̧czka,et al. Raman and IR studies of TaWO5.5, ASbWO6 (A = K, Rb, Cs, Tl), and ASbWO6·H2O (A = H, NH4, Li, Na) pyrochlore oxides , 2011 .
[8] M. Ma̧czka,et al. Thermodynamic modeling, structural and spectroscopic studies of the KNbWO6–KSbWO6–KTaWO6 system , 2010 .
[9] S. Uma,et al. Facile room temperature ion-exchange synthesis of Sn(2+) incorporated pyrochlore-type oxides and their photocatalytic activities. , 2009, Inorganic chemistry.
[10] A. Sleight,et al. First Observation of Electronic Conductivity in Mixed-Valence Tellurium Oxides , 2009 .
[11] B. Pan,et al. Structural, photophysical and photocatalytic properties of novel Bi2AlVO7. , 2009, Journal of hazardous materials.
[12] Ronald I. Smith,et al. Solid solubilities of (La Nd,)2(Zr,Ti)2O7 phases deduced by neutron diffraction , 2005 .
[13] J. Alonso,et al. Location of H+ sites in the fast proton-conductor (H3O)SbTeO6 pyrochlore. , 2005, Dalton transactions.
[14] S. Ikeda,et al. Overall Water Splitting on Tungsten-Based Photocatalysts with Defect Pyrochlore Structure , 2004 .
[15] Z. Zou,et al. Direct water splitting into H2 and O2 under visible light irradiation with a new series of mixed oxide semiconductor photocatalysts , 2003 .
[16] Jinhua Ye,et al. Photocatalytic water splitting into H2 and/or O2 under UV and visible light irradiation with a semiconductor photocatalyst , 2003 .
[17] Jun Wang,et al. Synthesis, Structure and Photocatalytic Property of a New Hydrogen Evolving Photocatalyst Bi2InTaO7 , 2003 .
[18] Jinhua Ye,et al. Substitution effects of In3+ by Fe3+ on photocatalytic and structural properties of Bi2InNbO7 photocatalysts , 2001 .
[19] A. Fujishima,et al. Detection of active oxidative species in TiO2 photocatalysis using the fluorescence technique , 2000 .
[20] Pengfei Wu,et al. Preparation and optical properties of nanocrystallites of RE_2Sn_2−xB′_xO_7 (RE = Sm, Ce; B′ = Fe, Co, Ni; 0.0 ≤ x ≤ 1.0) , 1998 .
[21] H. Tuller,et al. Stability and mixed ionic electronic conduction in Gd2(Ti1 − xMox)2O7 under anodic conditions , 1997 .
[22] H. Tuller,et al. Ionic conduction and disorder in the Gd2Sn2O7 pyrochlore system , 1996 .
[23] C. Mims,et al. Methane oxidative coupling over nonstoichiometric bismuth -tin pyrochlore catalysts , 1995 .
[24] David M. Sherman,et al. Electronic spectra of Fe3+ oxides and oxide hydroxides in the near IR to near UV , 1985 .
[25] A. Clearfield,et al. Fast ion conduction in the defect pyrochlore system KBxW2−xO6(B = Al, Ti and Ta) , 1985 .
[26] J. Longo,et al. Oxygen Electrocatalysis on Some Oxide Pyrochlores , 1983 .
[27] G. V. Subba Rao,et al. Oxide pyrochlores — A review , 1983 .
[28] M. Nygren,et al. Studies on composition, structure and ionic conductivity of the pyrochlore type system K1+xTa1+xW1−xO6 · nH2O, 0 , 1980 .
[29] A. Sleight,et al. Polarizability Enhancement of Ionic Conductivity for A1+in A1+M2X6Series , 1977 .
[30] John B. Goodenough,et al. Fast Na+-ion transport in skeleton structures , 1976 .